forked from GitHub/gf-core
added pt -transfer
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@@ -1,3 +1,5 @@
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{-# LANGUAGE PatternGuards #-}
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module GF.Command.Commands (
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allCommands,
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lookCommand,
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@@ -471,11 +473,11 @@ allCommands cod env@(pgf, mos) = Map.fromList [
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"are type checking and semantic computation."
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],
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examples = [
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"pt -compute (plus one two) -- compute value",
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"p \"foo\" | pt -typecheck -- type check parse results"
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"pt -compute (plus one two) -- compute value"
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],
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exec = \opts -> returnFromExprs . treeOps (map prOpt opts),
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options = treeOpOptions pgf
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exec = \opts -> returnFromExprs . treeOps opts,
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options = treeOpOptions pgf,
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flags = treeOpFlags pgf
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}),
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("q", emptyCommandInfo {
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longname = "quit",
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@@ -748,7 +750,9 @@ allCommands cod env@(pgf, mos) = Map.fromList [
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_ -> Nothing
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treeOps opts s = foldr app s (reverse opts) where
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app f = maybe id id (treeOp pgf f)
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app (OOpt op) | Just (Left f) <- treeOp pgf op = f
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app (OFlag op (VId x)) | Just (Right f) <- treeOp pgf op = f (mkCId x)
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app _ = id
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showAsString t = case t of
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ELit (LStr s) -> s
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@@ -777,7 +781,8 @@ stringOpOptions = sort $ [
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("to_" ++ p, "from GF " ++ n ++ " transliteration to unicode")] |
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(p,n) <- transliterationPrintNames]
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treeOpOptions pgf = [(op,expl) | (op,(expl,_)) <- allTreeOps pgf]
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treeOpOptions pgf = [(op,expl) | (op,(expl,Left _)) <- allTreeOps pgf]
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treeOpFlags pgf = [(op,expl) | (op,(expl,Right _)) <- allTreeOps pgf]
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translationQuiz :: Encoding -> PGF -> Language -> Language -> Type -> IO ()
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translationQuiz cod pgf ig og typ = do
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@@ -3,25 +3,25 @@ module GF.Command.TreeOperations (
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allTreeOps
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) where
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import GF.Compile.TypeCheck
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import PGF
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import PGF.Data
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import Data.List
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type TreeOp = [Expr] -> [Expr]
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treeOp :: PGF -> String -> Maybe TreeOp
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treeOp :: PGF -> String -> Maybe (Either TreeOp (CId -> TreeOp))
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treeOp pgf f = fmap snd $ lookup f $ allTreeOps pgf
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allTreeOps :: PGF -> [(String,(String,TreeOp))]
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allTreeOps :: PGF -> [(String,(String,Either TreeOp (CId -> TreeOp)))]
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allTreeOps pgf = [
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("compute",("compute by using semantic definitions (def)",
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map (compute pgf))),
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Left $ map (compute pgf))),
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("transfer",("syntactic transfer by applying function and computing",
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Right $ \f -> map (compute pgf . EApp (EFun f)))),
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("paraphrase",("paraphrase by using semantic definitions (def)",
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nub . concatMap (paraphrase pgf))),
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Left $ nub . concatMap (paraphrase pgf))),
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("smallest",("sort trees from smallest to largest, in number of nodes",
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smallest))
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Left $ smallest))
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]
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smallest :: [Expr] -> [Expr]
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